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Importance of equilibrium fluctuations between most stable conformers in the control of the reaction mechanism

机译:控制反应机理时最稳定构象异构体之间平衡波动的重要性

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Hydrolysis of closely related compounds show how subtle structural differences markedly change reaction mechanisms. While in the hydrolysis of 3-acetoxy-2-naphthoic acid (3AC2NA) the reacting groups rotate freely, favoring intramolecular general base catalysis, the 1-acetoxy-2-naphthoic acid (1AC2NA) isomer is caged in an energy wall that freezes a conformation suitable for intramolecular nucleophilic attack, in contrast to the results expected for reactions governed largely by electronic effects. The results highlight the importance of the dynamics of equilibrium fluctuations between most stable conformers in the control of the reaction mechanism, (i) promoting the nucleophilic attack in 1AC2NA by allowing the most stable conformers to equilibrate only via rotation in a direction that intercepts the reaction coordinate and (ii) favoring a general base-catalyzed water attack in 3AC2NA by favoring equilibration via rotation that allows inclusion of a water molecule in a proper position for reaction.
机译:密切相关的化合物的水解表明,细微的结构差异如何显着改变反应机理。在水解3-乙酰氧基-2-萘甲酸(3AC2NA)时,反应基团自由旋转,有利于分子内的一般碱催化,而1-乙酰氧基-2-萘甲酸(1AC2NA)异构体则被笼罩在能墙上分子内亲核攻击适合的构象,与预期的反应结果主要受电子效应支配的相反。结果强调了最稳定构象异构体之间平衡波动动力学在控制反应机理中的重要性,(i)通过允许最稳定构象异构体仅通过沿拦截反应的方向旋转来平衡来促进1AC2NA中的亲核攻击协调和(ii)促进旋转平衡,从而允许在适当的反应位置包含水分子,从而促进3AC2NA中一般的碱催化水攻击。

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